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Probe of Extra Dimensions in Lepton Pair Production at the LHC: an update

机译:LHC在LEPTON对生产中额外尺寸的探讨:更新

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Arkani-Hamed, Dimopoulous, and Dvali have proposed a model (ADD) of low-scale quantum gravity featuring large extra dimensions. In this model, the exchange of Kaluza-Klein towers of gravitons can enhance the production rate of lepton pairs at high invariant mass in proton-proton collisions at the LHC. By considering the present and future LHC energy regimes, we reanalyse the potential of the LHC to discover the effects of large extra dimensions and to discriminate between various theoretical models. Specifically, in latter case we explore the capability of the LHC to distinguish spin-2 Kaluza-Klein towers of gravitons exchange from other new physics effects which might be conveniently parametrized by the four-fermion contact interactions. We find that the LHC with planned energy 14 TeV and luminosity 100 fb-1 will be capable of discovering (and identifying) graviton exchange effects in the large extra dimensions with the cutoff parameter of order M_S = 6.2 TeV (4.8 TeV) for d = 6 and M_S = 8.8 TeV (6.8 TeV) for d = 3.
机译:Arkani-Hamamed,DimoOwoulous和Dvali提出了一种模型(Add)的低尺度量子重力,具有大的额外尺寸。在该模型中,卡鲁兹 - 克莱林塔的重点交换可以在LHC的质子 - 质子碰撞中提高Lepton对的高不变质量的生产率。通过考虑现在和未来的LHC能源制度,我们重新分析了LHC的潜力,以发现大量额外尺寸的影响,并在各种理论模型之间区分。具体而言,在后一种情况下,我们探讨了LHC的能力,以区分Regitons交换的旋转-2kaluza-klein塔从其他新的物理效果,这可能是通过四个铁偶接触相互作用方便化的。我们发现,具有计划能量14 Tev和Luminosity 100 FB-1的LHC将能够在大额外尺寸中发现(并识别)Graviton Exchange效果,其中D = D = DEV(4.8 TEV)的截止参数。 6和M_S = 8.8 TEV(6.8 TEV)为D = 3。

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